CN212903176U - Fixed inclinometer - Google Patents

Fixed inclinometer Download PDF

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Publication number
CN212903176U
CN212903176U CN202022429552.8U CN202022429552U CN212903176U CN 212903176 U CN212903176 U CN 212903176U CN 202022429552 U CN202022429552 U CN 202022429552U CN 212903176 U CN212903176 U CN 212903176U
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China
Prior art keywords
inclinometer
cable
inclination measuring
cleaning brush
deviational survey
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CN202022429552.8U
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Chinese (zh)
Inventor
段帅杰
姚超
耿忠能
毕玉文
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Shanghai Minyue Survey And Design Co ltd
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Shanghai Minyue Survey And Design Co ltd
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Abstract

The application relates to a fixed inclinometer, which relates to the technical field of inclinometers and comprises an inclinometer rod, wherein at least one inclinometer assembly is arranged on the inclinometer rod, a cable is arranged at one end of the inclinometer rod and is in signal communication with the inclinometer assembly, and one end, away from the inclinometer assembly, of the cable is connected with a display for displaying measurement data of the inclinometer assembly; and one end of the inclination measuring rod, which is far away from the cable, is provided with a cleaning brush in a surrounding manner. This application has the effect that improves inclinometer detection accuracy.

Description

Fixed inclinometer
Technical Field
The application relates to the technical field of inclinometers, in particular to a fixed inclinometer.
Background
The inclinometer is an instrument for measuring the apex angle and azimuth angle of engineering structures such as a drill hole, a foundation pit, a foundation, a wall body, a dam slope and the like, and the horizontal displacement is obtained by measuring the inclination angle of the drill hole.
In the related technology, before the inclination measurement operation is needed, an inclination measurement pipe is pre-buried in a soil body, after the soil body is deformed, the whole inclination measurement pipe is correspondingly deformed, and the pulley of the inclination measurement probe performs point-by-point test along a groove, so that the horizontal displacement can be accurately measured. And (5) forecasting according to the displacement amount and guiding construction.
With respect to the related art among the above, the inventors consider that the following drawbacks occur: since the inclinometer pipe is embedded in the soil body in advance, impurities such as limestone are easily accumulated in the inclinometer pipe, and when the inclinometer probe performs an inclinometry operation, the impurities are detected to cause deviation on detection data.
SUMMERY OF THE UTILITY MODEL
In order to improve the detection precision of inclinometer, this application provides a fixed inclinometer.
The application provides a fixed inclinometer adopts following technical scheme:
a fixed inclinometer comprises an inclinometry rod, wherein at least one inclinometry component is arranged on the inclinometry rod, a cable is arranged at one end of the inclinometry rod and is in signal communication with the inclinometry component, and a display used for displaying measurement data of the inclinometry component is connected to one end, away from the inclinometry component, of the cable; and one end of the inclination measuring rod, which is far away from the cable, is provided with a cleaning brush in a surrounding manner.
Through adopting above-mentioned technical scheme, when using the inclinometer to carry out the deviational survey operation to the deviational survey pipe, put into the deviational survey pole in, and deviational survey subassembly and deviational survey intraductal side wall slip butt, under the action of gravity, the deviational survey pole slides in the deviational survey pipe, and then the deviational survey subassembly carries out the deviational survey operation to the lateral wall of deviational survey pipe, the measured data that the deviational survey subassembly detected passes through cable transmission to display department, and when the deviational survey pole slides in the deviational survey intraductal, the brush cleaner slides with the deviational survey pipe side wall, and then the brush cleaner clears away the debris of adhesion on the deviational survey pipe lateral wall, avoid debris to cause the interference to the deviational survey subassembly. So set up, improved the detection precision of inclinometer when measuring.
Optionally, the cleaning brush is detachably arranged on the inclination measuring rod, and the cleaning brush is provided with a fixing component for fixing the cleaning brush on the inclination measuring rod.
Through adopting above-mentioned technical scheme, use for a long time when the brush cleaner and lead to the fact the wearing and tearing back to self, dismantle the serious brush cleaner of wearing and tearing from the deviational survey pole to after changing the not worn and torn brush cleaner, use fixed subassembly to fix the brush cleaner on the deviational survey pole, improved the application of brush cleaner.
Optionally, the fixing assembly comprises a fixing frame and a fixing piece, the fixing frame is located on a side wall, close to the diagonal measuring rod, of the cleaning brush, and the fixing piece penetrates through the fixing frame and is fixedly connected with the diagonal measuring rod.
Through adopting above-mentioned technical scheme, when fixed subassembly will the brush cleaner fix survey the down tube on, the mount is worn to establish and with mount and survey down tube looks fixed connection by the mounting, and then fixes the brush cleaner on surveying the down tube, has improved overall structure's application nature.
Optionally, the inclinometry subassembly includes the deviational survey frame, surveys the oblique wheel and deviational survey sensor, the deviational survey frame rotates and sets up on surveying the down tube, survey the oblique wheel and rotate and set up the one end of keeping away from the deviational survey pole at the deviational survey frame, the deviational survey sensor is located the deviational survey frame, just the deviational survey sensor is connected with cable signal.
Through adopting above-mentioned technical scheme, when using the deviational survey subassembly to carry out the deviational survey operation to the deviational survey pipe, put into the deviational survey pole in the deviational survey frame, rotate and survey the sloping frame for the deviational survey wheel rolls the butt with deviational survey pipe lateral wall, and then at deviational survey pole whereabouts in-process, the deviational survey wheel rolls at deviational survey intraductal lateral wall, and the deviational survey sensor is passed through cable transmission with the roll data of deviational survey wheel and is shown to display department, has improved overall structure's application.
Optionally, the cable includes electric core and tensile layer, tensile layer parcel sets up on electric core, just electric core signal intercommunication deviational survey subassembly and display.
Through adopting above-mentioned technical scheme, when the deviational survey subassembly carries out the deviational survey operation to the deviational survey pipe in the deviational survey pipe, the data that the deviational survey subassembly surveyed transmit display department through electric core, and the cable can hold the deviational survey pole, and the tensile layer has increased the stretch-proofing degree of cable, has improved the application of cable.
Optionally, one end of the inclination measuring rod close to the cleaning brush is provided with a buffer cushion block.
Through adopting above-mentioned technical scheme, when the deviational survey pole falls to the bottom of deviational survey pipe in the deviational survey pipe, the impact force can be cleared up through self deformation to the cushion block, and then avoids the deviational survey pole to drop to the deviational survey pipe bottom and causes the deviational survey pole to damage, has improved overall structure's application.
Optionally, a winding frame is arranged at the cable, and the cable is wound on the winding frame.
Through adopting above-mentioned technical scheme, the cable is around establishing on winding frame, is convenient for receive and place the cable.
Optionally, an operating handle is arranged on the winding framework.
Through adopting above-mentioned technical scheme, use operating handle, be convenient for rotate the operation of receiving and releasing to the cable on the bobbin, improved bobbin's use convenience.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the cleaning brush is arranged at one end, far away from the cable, of the inclinometer rod in a surrounding mode, when the inclinometer rod slides in the inclinometer tube, the cleaning brush and the side wall of the inclinometer tube slide, and then impurities adhered to the side wall of the inclinometer tube are cleaned away by the cleaning brush, so that interference of the impurities on an inclinometer assembly is avoided, and the detection precision of the inclinometer during measurement is improved;
2. can dismantle the setting on surveying the down tube through with the brush cleaner, and be provided with on the brush cleaner and fix self fixed subassembly on surveying the down tube, use for a long time when the brush cleaner and lead to the fact the wearing and tearing back to self, dismantle the serious brush cleaner of wearing and tearing from surveying the down tube to after changing the not worn and torn brush cleaner, use fixed subassembly to fix the brush cleaner on surveying the down tube, improved the application of brush cleaner.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a fixed inclinometer according to an embodiment of the application;
FIG. 2 is a schematic diagram of a partial cross-sectional view of a fixed inclinometer as a highlighted cable according to an embodiment of the present application;
FIG. 3 is a partially exploded view of a stationary inclinometer as a highlighted cleaning brush according to an embodiment of the present application.
Description of reference numerals: 1. an inclination measuring rod; 2. a rotating groove; 3. a slope measuring assembly; 31. an inclination measuring frame; 32. an inclination measuring wheel; 33. an inclinometer sensor; 4. a cable; 41. an electric core; 42. a tensile layer; 5. a display; 6. winding a bobbin; 7. an operating handle; 8. cleaning with a brush; 9. a fixing assembly; 91. a fixed mount; 92. a fixing member; 10. cushion the cushion.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses a fixed inclinometer.
Referring to fig. 1 and 2, a fixed inclinometer comprises an inclined measuring rod 1 which is cylindrical, wherein at least one rotating groove 2 radially penetrates through the inclined measuring rod 1 on the inclined measuring rod 1, and an inclination measuring assembly 3 is rotationally arranged in each rotating groove 2. The inclination measuring component 3 comprises an inclination measuring frame 31, an inclination measuring wheel 32 and an inclination measuring sensor 33, wherein the inclination measuring frame 31 is rectangular, the middle of the inclination measuring frame 31 along the length direction is rotatably arranged at the position, located at the rotating groove 2, of the inclination measuring rod 1, the two ends of the inclination measuring frame 31 extend out of the rotating groove 2 to be identical in length, the inclination measuring wheel 32 is rotatably arranged at the two ends of the inclination measuring frame 31, the inclination measuring wheel 32 is symmetrically arranged along the rotating groove 2, and the inclination measuring sensor 33 is located in the inclination measuring frame 31. In the embodiment of the present application, the two rotation grooves 2 are provided, and the inclination sensor 33 uses a levelness sensor of type AZ 101. When the inclinometer bar 1 is placed into the inclinometer pipe for inclinometry operation, the inclinometer wheel 32 rotates and abuts against the side wall of the inclinometer pipe, the inclination angle of the inclinometer frame 31 is measured by the inclinometer sensor 33 at the moment, and if the inclinometer wheel 32 rolls to the position offset of the inclinometer pipe, the rotation angle of the inclinometer frame 31 changes, so that the inclinometer sensor 33 measures angle data different from the initial angle.
The one end of deviational survey pole 1 is kept away from and is provided with cable 4, and cable 4 and deviational survey sensor 33 signal connection in the deviational survey subassembly 3, and the one end that cable 4 kept away from deviational survey pole 1 is provided with display 5, and cable 4 is with deviational survey sensor 33 and display 5 signal intercommunication. The cable 4 transmits the angle data of the inclinometer frame 31 detected by the inclinometer sensor 33 to the display 5, so that an operator can observe the indication number of the display 5 to visually and clearly know the inclination condition of the inclinometer.
The cable 4 department is provided with the vertical bobbin 6 of I shape, and the cable 4 is around establishing on bobbin 6, is provided with operation bobbin 6 pivoted operating handle 7 on bobbin 6, and operating handle 7 is positive Z style of calligraphy, and operating handle 7 is located the one department that the axis was kept away from to bobbin 6 lateral wall. Cable 4 is convenient for receive cable 4 around establishing on bobbin 6 and is put, and survey down tube 1 when whereabouts in the deviational survey, operating personnel utilizes operating handle 7 to rotate bobbin 6, is convenient for carry out the unwrapping wire operation, when taking out survey down tube 1 from the deviational survey, utilizes operating handle 7 to be convenient for receive the line operation.
The cable 4 comprises a battery cell 41 and a tensile layer 42, the tensile layer 42 is wrapped on the battery cell 41, and the battery cell 41 is in signal communication with the inclinometer sensor 33 and the display 5. In the embodiment of the present application, the battery cell 41 is a copper signal line, and the tensile layer 42 is a high-pressure polyethylene plastic. When the inclinometer enters the inclinometer for inclinometry operation, the cable 4 is hung to fall in the inclinometer, the tensile layer 42 improves the stable tensile strength of the cable 4, the cable 4 is prevented from being broken in the falling process of the inclinometer, and the battery cell 41 transmits angle data detected by the inclinometer sensor 33 to the display 5.
Referring to fig. 1 and 3, one end of the inclinometer rod 1, which is far away from the cable 4, is detachably provided with a circular cleaning brush 8 in a surrounding manner, the axial projection area of the cleaning brush 8 is larger than that of the inclinometer, and the cleaning brush 8 is provided with a fixing component 9 for fixing the cleaning brush on the inclinometer. When the inclinometer enters the inclinometer for inclinometry operation, the cleaning brush 8 cleans impurities adhered to the side wall of the inclinometer, and when the cleaning brush 8 is too long in service life and is seriously worn, the cleaning brush 8 can be disassembled and replaced, and the cleaning brush 8 is fixed on the inclinometer by the fixing component 9.
The fixing assembly 9 comprises a fixing frame 91 and a fixing piece 92, the fixing frame 91 is located on a side wall, close to the inclinometer rod 1, of the cleaning brush 8, the opening of the fixing frame 91 faces the inclinometer, the fixing frame 91 is in sliding butt joint with the side wall of one end of the inclinometer, and the fixing piece 92 penetrates through the fixing frame 91 and the inclinometer in a butting mode. In this embodiment, the fixing member 92 may be a screw rod, the screw rod penetrates through the fixing frame 91 and is in threaded connection with the fixing frame 91, and the screw rod abuts against the sidewall of the inclinometer, so that the fixing frame 91 is fixed to the inclinometer.
The inclinometer is close to the one end of brush cleaner 8 and is provided with the cushion block 10 that is the cylinder type, and in this application embodiment, cushion block 10 can be the cushion rubber piece. When the inclinometer drops to the bottom end in the inclinometer tube, the buffer rubber block is elastically deformed to absorb the falling impact force, so that the inclinometer is prevented from being damaged.
The implementation principle of the fixed inclinometer in the embodiment of the application is as follows: when carrying out the deviational survey operation to the deviational survey pipe, put into the deviational survey pole 1 in the deviational survey pipe, under the action of gravity, deviational survey pole 1 landing in the deviational survey pipe, deviational survey wheel 32 rotates the butt on the deviational survey pipe inside wall, deviational survey sensor 33 is through surveying the angle data of measuring sloping frame 31, and transmit 5 departments of display through cable 4, operating personnel observes 5 readings of display and can know the deviational survey pipe slope degree, and the falling in-process of deviational survey appearance in the deviational survey pipe, the impurity of cleaning brush 8 on the deviational survey appearance on the deviational survey pipe inside wall cleans, avoid causing the error to the measurement of deviational survey subassembly 3.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. A fixed inclinometer, which is characterized in that: the device comprises an inclination measuring rod (1), wherein at least one inclination measuring component (3) is arranged on the inclination measuring rod (1), a cable (4) is arranged at one end of the inclination measuring rod (1), the cable (4) is in signal communication with the inclination measuring component (3), and one end, far away from the inclination measuring component (3), of the cable (4) is connected with a display (5) used for displaying measurement data of the inclination measuring component (3); one end of the inclination measuring rod (1) far away from the cable (4) is provided with a cleaning brush (8) in a surrounding mode.
2. A fixed inclinometer according to claim 1, characterized in that: the cleaning brush (8) can be detachably arranged on the inclination measuring rod (1), and a fixing component (9) for fixing the cleaning brush (8) on the inclination measuring rod (1) is arranged on the cleaning brush.
3. A fixed inclinometer according to claim 2, characterized in that: fixed subassembly (9) are including mount (91) and mounting (92), mount (91) are located cleaning brush (8) and are close to on surveying the lateral wall of down tube (1), mounting (92) wear to establish mount (91) and with survey down tube (1) looks fixed connection.
4. A fixed inclinometer according to claim 1, characterized in that: the inclinometry subassembly (3) is including surveying sloping frame (31), survey oblique wheel (32) and inclinometry sensor (33), survey sloping frame (31) and rotate the setting on surveying down tube (1), survey oblique wheel (32) and rotate the one end that sets up in surveying sloping frame (31) and keep away from surveying down tube (1), inclinometry sensor (33) are located surveys sloping frame (31), just inclinometry sensor (33) and cable (4) signal connection.
5. A fixed inclinometer according to claim 1, characterized in that: the cable (4) comprises an electric core (41) and a tensile layer (42), the tensile layer (42) is wrapped on the electric core (41), and the electric core (41) is communicated with the inclinometer assembly (3) and the display (5) through signals.
6. A fixed inclinometer according to claim 1, characterized in that: and a buffer cushion block (10) is arranged at one end of the inclination measuring rod (1) close to the cleaning brush (8).
7. A fixed inclinometer according to claim 1, characterized in that: the cable (4) is provided with a winding frame (6), and the cable (4) is wound on the winding frame (6).
8. A fixed inclinometer according to claim 7, characterized in that: and an operating handle (7) is arranged on the winding framework (6).
CN202022429552.8U 2020-10-27 2020-10-27 Fixed inclinometer Active CN212903176U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022429552.8U CN212903176U (en) 2020-10-27 2020-10-27 Fixed inclinometer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022429552.8U CN212903176U (en) 2020-10-27 2020-10-27 Fixed inclinometer

Publications (1)

Publication Number Publication Date
CN212903176U true CN212903176U (en) 2021-04-06

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Application Number Title Priority Date Filing Date
CN202022429552.8U Active CN212903176U (en) 2020-10-27 2020-10-27 Fixed inclinometer

Country Status (1)

Country Link
CN (1) CN212903176U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113959406A (en) * 2021-09-25 2022-01-21 明达海洋工程有限公司 Mine geological disaster monitoring and early warning device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113959406A (en) * 2021-09-25 2022-01-21 明达海洋工程有限公司 Mine geological disaster monitoring and early warning device
CN113959406B (en) * 2021-09-25 2023-08-25 明达海洋工程有限公司 Mine geological disaster monitoring and early warning device

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